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首页> 外文期刊>Plant Molecular Biology >Expression and β-glucan binding properties of Scots pine (Pinus sylvestris L.) antimicrobial protein (Sp-AMP)
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Expression and β-glucan binding properties of Scots pine (Pinus sylvestris L.) antimicrobial protein (Sp-AMP)

机译:苏格兰松(Pinus sylvestris L.)抗菌蛋白(Sp-AMP)的表达及β-葡聚糖结合特性

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Scots pine (Pinus sylvestris) secretes a number of small, highly-related, disulfide-rich proteins (Sp-AMPs) in response to challenges with fungal pathogens such as Heterobasidion annosum, although their biological role has been unknown. Here, we examined the expression patterns of these genes, as well as the structure and function of the encoded proteins. Northern blots and quantitative real time PCR showed increased levels of expression that are sustained during the interactions of host trees with pathogens, but not non-pathogens, consistent with a function in conifer tree defenses. Furthermore, the genes were up-regulated after treatment with salicylic acid and an ethylene precursor, 1-aminocyclopropane-1-carboxylic-acid, but neither methyl jasmonate nor H2O2 induced expression, indicating that Sp-AMP gene expression is independent of the jasmonic acid signaling pathways. The cDNA encoding one of the proteins was cloned and expressed in Pichia pastoris. The purified protein had antifungal activity against H. annosum, and caused morphological changes in its hyphae and spores. It was directly shown to bind soluble and insoluble β-(1,3)-glucans, specifically and with high affinity. Furthermore, addition of exogenous glucan is linked to higher levels of Sp-AMP expression in the conifer. Homology modeling and sequence comparisons suggest that a conserved patch on the surface of the globular Sp-AMP is a carbohydrate-binding site that can accommodate approximately four sugar units. We conclude that these proteins belong to a new family of antimicrobial proteins (PR-19) that are likely to act by binding the glucans that are a major component of fungal cell walls.
机译:樟子松(Pinus sylvestris)分泌许多小的,高度相关的,富含二硫键的蛋白质(Sp-AMPs),以应对真菌病原体(如奇异异核症)的挑战,尽管它们的生物学作用尚不清楚。在这里,我们检查了这些基因的表达模式,以及编码蛋白的结构和功能。 Northern杂交和定量实时PCR显示宿主树与病原体(而非非病原体)相互作用期间维持的表达水平增加,这与针叶树防御功能一致。此外,在水杨酸和乙烯前体1-氨基环丙烷-1-羧酸处理后,基因被上调,但茉莉酸甲酯和H2 O2 均未诱导表达,表明Sp- AMP基因表达与茉莉酸信号传导途径无关。克隆编码一种蛋白质的cDNA,并在巴斯德毕赤酵母中表达。纯化的蛋白质具有对H. annosum的抗真菌活性,并引起其菌丝和孢子的形态变化。它直接显示出可溶和不可溶的β-(1,3)-葡聚糖的结合,特异性高亲和力。此外,外源葡聚糖的添加与针叶树中Sp-AMP表达的较高水平有关。同源性建模和序列比较表明,球形Sp-AMP表面上的保守贴片是碳水化合物结合位点,可以容纳大约四个糖单元。我们得出的结论是,这些蛋白质属于新的抗菌蛋白质家族(PR-19),它们可能通过结合作为真菌细胞壁主要成分的葡聚糖发挥作用。

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